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An All-Digital Delay-Locked Loop Using an In-Time Phase Maintenance Scheme for Low-Jitter Gigahertz Operations

机译:使用及时相位维护方案的全数字延迟锁定环路,可实现低抖动千兆赫兹运算

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Traditional all-digital delay-locked loops (ADDLLs) have a long control loop, and false skew compensation may occur due to late code adjustment. To avoid this problem, the ADDLLs either simply sacrifice the maximum operating frequency or adopt a lower code adjustment rate to achieve a higher maximum operating frequency. However, lowering the code adjustment rate not only increases the number of the locking cycles but also results in large output jitter because the clock skew induced by run-time variations cannot be compensated in time. This paper presents a 55 nm 1.0 V 0.1-to-2.5 GHz ADDLL, which is constructed on a previously proposed half-delay-line skew-compensation circuit with several new circuit design techniques developed to achieve low jitter, small area, low power, fast lock-in, and high PVT- variation tolerance across a large operating frequency range. The key design feature is a ping-pong phase maintenance scheme that allows the code adjustment to be performed in time in each clock cycle, even for gigahertz operations. The measurement results show that the ADDLL achieves a peak-to-peak (p-p) jitter of 3 ps with 1.96 mW power consumption and 8 lock-in cycles when operated at 2.5 GHz.
机译:传统的全数字延迟锁定环(ADDLL)具有较长的控制环,并且由于后期代码调整而可能发生错误的偏斜补偿。为避免此问题,ADDLL要么简单地牺牲了最大工作频率,要么采用较低的代码调整率来获得更高的最大工作频率。但是,降低代码调整率不仅会增加锁定周期的数量,而且还会导致较大的输出抖动,因为无法及时补偿运行时变化引起的时钟偏斜。本文介绍了一种55 nm 1.0 V 0.1至2.5 GHz ADDLL,它基于先前提出的半延迟线偏斜补偿电路构建,并开发了几种新的电路设计技术,以实现低抖动,小面积,低功耗,快速锁定,在较大的工作频率范围内具有很高的PVT变化容限。关键设计功能是乒乓阶段维护方案,即使在千兆赫兹操作下,也可以在每个时钟周期中及时执行代码调整。测量结果表明,当在2.5 GHz频率下工作时,ADDLL实现了3 ps的峰峰值(p-p)抖动,1.96 mW的功耗和8个锁定周期。

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